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Preparation begins for a 15,000m Drill Program on the Radar Ti-V-Fe Challenge:
Subject preparations are underway throughout the Radar Challenge’s Trapper Zone, which spans over a 3+ km strike of oxide mineralization. Present work is designed to strengthen drill concentrating on, maximize effectivity, and guarantee high-quality geological information accuracy for the MRE, together with:
1. Enhanced Trench Evaluation
Constructing on roughly 504 sq. metres (5,425 ft²) of trenching accomplished thus far, SAGA is conducting further high-pressure energy washing and detailed geological mapping in three trenches throughout the Trapper Zone. This work exposes clear bedrock surfaces by eradicating overburden and vegetation, permitting geologists to doc rock sorts, mineral textures, and oxide layering developments with precision. The method will assist refine 3D geological fashions, verify continuity of vanadiferous titanomagnetite (VTM) mineralization, and establish probably the most potential high-grade drill targets.
2. Surveying and Geophysical Preparation
Crews are additionally executing a complete surveying program to help drill collar placement and spatial accuracy throughout the Trapper Zone. Utilizing high-precision GPS, complete stations, and laser scanning expertise, the workforce is mapping the newly constructed 4 km Trapper Path entry route, establishing a geophysics baseline, and reducing grid traces (cutlines) by means of vegetation to allow additional geophysical traverses. The geophysics baseline will function a calibration reference for magnetometer devices, guaranteeing constant and dependable detection of anomalies that will point out subsurface mineralization. Collectively, these surveys are designed to eradicate spatial errors in modelling and optimize drill gap concentrating on
3. Establishing Full Camp Infrastructure
To help the dimensions of the upcoming 15,000 metre drill program, SAGA has secured land close to Cartwright, Labrador, for the institution of a totally serviced exploration camp. The camp will embrace lodging, a kitchen trailer, a core shack for drill core logging and storage, an workplace for information administration, and a lower shack for pattern preparation. Utility infrastructure—together with energy technology, water storage and filtration, and septic programs—is being put in to make sure long-term operational stability. With this infrastructure in place, SAGA is positioned to help long-term stability and effectivity for the crews managing this milestone drill program.
“This mobilization is a pivotal second for the Radar Challenge as we transfer from early exploration success towards defining a mineral useful resource,” stated Mike Stier, CEO and Director of Saga Metals Corp. “By investing in thorough trench mapping, superior surveying, and sturdy camp infrastructure, we’re positioning the Radar Challenge for a extremely environment friendly 15,000 metre drill program. We imagine this marketing campaign has the potential to unlock vital worth in titanium, vanadium, and iron—crucial minerals important to the worldwide vitality transition. Our precedence is to advance Radar towards a mineral useful resource estimate and ship worth to our shareholders.”
The preparation part is anticipated to conclude within the coming weeks, with the 15,000m drilling program scheduled to start in early November 2025.

Determine 1: Radar Challenge’s Trapper Zone depicting a 3+ km magnetic anomaly and oxide layering development. The Trapper Path (in black) would be the goal of the deliberate 15,000 m diamond drilling program geared toward establishing Saga’s maiden mineral useful resource estimation.
Abstract of the Radar Ti-V-Fe Challenge in Labrador, Canada:
The Radar Property advantages from distinctive infrastructure, together with all-season highway entry, a close-by deep-water port, hydroelectric energy, and an airstrip with claims simply 10 km from Cartwright, Labrador. Spanning 24,175 hectares, the Property covers all of the Dykes River intrusive complicated—an intensive (~160 km²) Mesoproterozoic layered mafic intrusion. Distinctive amongst Western exploration corporations, SAGA controls its total intrusive complicated.
Grenville-age mafic layered intrusions of Québec and Labrador symbolize a major however underdeveloped titanium–vanadium–iron useful resource province. These layered intrusions, emplaced throughout the Grenvillian orogeny, regionally host thick oxide-rich cumulate zones dominated by titanomagnetite and hemo-ilmenite with accent vanadium and phosphorus. Their scale and metallogenic affinity are straight similar to main Fe–Ti–V deposits similar to Lac Tio (Quebec), Panzhihua (China), Tellnes (Norway) and Bushveld (South Africa), which provide a significant share of worldwide TiO₂ feedstock and vanadium for metal alloys and rising vitality storage markets. The mixture of huge tonnage potential, beneficial logistics, and important mineral content material positions the Grenville intrusions, similar to Radar’s Dykes River complicated, as strategic candidates for growth within the context of rising North American demand for titanium, vanadium and high-quality iron.
Early geological mapping, authorities magnetic surveys and ground-based geophysics of the Radar property have recognized oxide layering throughout greater than 20 km of strike size, with mineralized zones remaining open for growth. Vanadiferous titanomagnetite (“VTM”) is the principal oxide and happens as cumulate and intercumulus mineralization over massive thicknesses of the Dykes River layered intrusion.

Determine 2: Radar Property map, depicting magnetic anomalies, oxide layering and the location of the 2025 drill program within the Hawkeye zone. The Property is nicely serviced by highway entry and is conveniently positioned close to the city of Cartwright, Labrador. A compilation of historic aeromagnetic anomalies is overlaid by ground-based geophysics as proven. SAGA has demonstrated the reliability of the regional airborne magnetic surveys after ground-truthing and drilling within the 2024 and 2025 discipline packages.
SAGA’s 2025 Winter Drill Program at Radar:
Saga accomplished its maiden drill program in early 2025, that includes a 2,209-metre, seven-hole diamond drill marketing campaign throughout the Hawkeye Zone—a mixture of 3D magnetic inversion modeling and floor VLF-EM outcomes guided drill concentrating on. This system intersected broad zones of titanomagnetite-rich oxide layering, with cumulative intersections displaying constant grades of titanium dioxide (TiO 2 ), vanadium pentoxide (V 2 O 5 ) and iron (Fe).
Similarities within the ratios of TiO 2 and V2O 5 to Fe 3 O 4 throughout a number of drill holes serve to establish discrete igneous layers. Throughout the 600 m examined thickness of the layered gabbronorite, the chemistry delineates a really promising 300-400 m thickness, known as the Decrease Cumulate Layer. The best V 2 O 5 assays are within the decrease 100-200 m, coinciding with the highest-grade intervals of VTMs. The layer is comprised of interlayered gabbronorite and bands of semi-massive to large VTM.
Drill holes R25-HEZ-01, -07, -04, and -05 intersect this Decrease Cumulate Layer. The chemistry signifies that the layer was deposited from a large-volume pulse of Ti-V-Fe-enriched magma. Saga will likely be concentrating on this similar discrete intrusive horizon alongside the Trapper Zone’s 3+ km strike size.
Magnetic and VLF-EM Survey to Lengthen the ‘Trapper Zone’
As crews put together for the 15,000 m drill program, a small geophysics workforce will proceed a ground-based magnetic survey over the northern and southern extensions of the Trapper Zone. The survey makes use of a GSM-19 magnetometer to gather magnetic-field and VLF-EM information (utilizing VLF Transmitter Cutler).
The survey is carried out utilizing a grid of N-S traces, spaced 50 m aside, with observations made at stations spaced 20 m aside alongside the traces. The tightly gridded stations will likely be used to map the extent to which the oxide layering strike continues to the NE-E on the prime of the zone and SE-E on the backside of the zone, each trending again in the direction of the Hawkeye Zone.

Determine 3: Radar Challenge’s potential oxide layering zone extends for an inferred 20 km strike size, as proven on a compilation of historic airborne geophysics in addition to ground-based geophysics within the Hawkeye and Trapper zones accomplished by SAGA within the 2024/2025 discipline packages. SAGA has demonstrated the reliability of the regional airborne magnetic surveys after ground-truthing and drilling within the 2024 and 2025 discipline packages .
Saga Metals’ Company Video
Please discover beneath Saga Metals’ company video, produced by Pinnacle Digest, offering an outline of the Firm in addition to highlighting the important thing traits and developments of the Radar Titanium-Vanadium-Iron (Ti-V-Fe) Challenge in Labrador, Canada.
A Media Snippet accompanying this announcement is accessible by clicking on this hyperlink.
Certified Individual
Paul J. McGuigan, P. Geo., is an Impartial Certified Individual as outlined below Nationwide Instrument 43-101 and has reviewed and accepted the technical info associated to the Radar Ti-V-Fe Challenge disclosed on this information launch.
About Saga Metals Corp.
Saga Metals Corp. is a North American mining firm centered on the exploration and discovery of a diversified suite of crucial minerals that help the worldwide transition to inexperienced vitality. The Radar Titanium Challenge includes 24,175 hectares and completely encloses the Dykes River intrusive complicated, mapped at 160 km² on the floor close to Cartwright, Labrador. Exploration thus far, together with a 2,200m drill program, has confirmed a big and mineralized layered mafic intrusion internet hosting vanadiferous titanomagnetite (VTM) with robust grades of titanium and vanadium.
The Double Mer Uranium Challenge, additionally in Labrador, covers 25,600 hectares that includes uranium radiometrics that spotlight an 18km east-west development, with a confirmed 14km part producing samples as excessive as 0.428% U 3 O 8 and uranium uranophane was recognized in a number of areas of highest radiometric response (2024 Double Mer Technical Report).
Moreover, SAGA owns the Legacy Lithium Property in Quebec’s Eeyou Istchee James Bay area. This challenge, developed in partnership with Rio Tinto, has been expanded by means of the acquisition of the Amirault Lithium Challenge. Collectively, these properties cowl 65,849 hectares and share vital geological continuity with different main gamers within the space, together with Rio Tinto, Winsome Assets, Azimut Exploration, and Loyal Metals.
With a portfolio that spans key minerals essential to the inexperienced vitality transition, SAGA is strategically positioned to play a necessary function within the clear vitality future.
On Behalf of the Board of Administrators
Mike Stier, Chief Government Officer
For extra info, contact:
Rob Guzman, Investor Relations
Saga Metals Corp.
Tel: +1 (844) 724-2638
E-mail: rob@sagametals.com
www.sagametals.com
Neither the TSX Enterprise Trade nor its Regulation Service Supplier (as that time period is outlined within the insurance policies of the TSX Enterprise Trade) accepts duty for the adequacy or accuracy of this launch.
Cautionary Disclaimer
This information launch incorporates forward-looking statements throughout the that means of relevant securities legal guidelines that aren’t historic information. Ahead-looking statements are sometimes recognized by phrases similar to “will”, “could”, “ought to”, “anticipates”, “expects”, “believes”, and related expressions or the detrimental of those phrases or different comparable terminology. All statements apart from statements of historic truth, included on this launch are forward-looking statements that contain dangers and uncertainties. Particularly, this information launch incorporates forward-looking info pertaining to the exploration of the Firm’s Radar Challenge. There might be no assurance that such statements will show to be correct and precise outcomes and future occasions might differ materially from these anticipated in such statements. Vital components that would trigger precise outcomes to vary materially from the Firm’s expectations embrace, however are usually not restricted to, adjustments within the state of fairness and debt markets, fluctuations in commodity costs, delays in acquiring required regulatory or governmental approvals, environmental dangers, limitations on insurance coverage protection, inherent dangers and uncertainties concerned within the mineral exploration and growth business, notably given the early-stage nature of the Firm’s belongings, and the dangers detailed within the Firm’s steady disclosure filings with securities rules infrequently, out there below its SEDAR+ profile at www.sedarplus.ca. The reader is cautioned that assumptions used within the preparation of any forward-looking info could show to be incorrect. Occasions or circumstances could trigger precise outcomes to vary materially from these predicted, on account of quite a few recognized and unknown dangers, uncertainties, and different components, a lot of that are past the management of the Firm. The reader is cautioned to not place undue reliance on any forward-looking info. Such info, though thought of affordable by administration on the time of preparation, could show to be incorrect and precise outcomes could differ materially from these anticipated. Ahead-looking statements contained on this information launch are expressly certified by this cautionary assertion. The forward-looking statements contained on this information launch are made as of the date of this information launch and the Firm will replace or revise publicly any of the included forward-looking statements solely as expressly required by relevant regulation.
Figures accompanying this announcement can be found at:
https://www.globenewswire.com/NewsRoom/AttachmentNg/845d6c26-2715-41ee-8e06-4f4f489b1aca
https://www.globenewswire.com/NewsRoom/AttachmentNg/877329ca-ebde-4a91-bad4-950efb5f8eb8
https://www.globenewswire.com/NewsRoom/AttachmentNg/c7aaccd0-d157-48b9-874f-f04e0b512563
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